首页> 外文OA文献 >Frequency-dependent bifurcation point between field-cooled and zero-field-cooled dielectric constant of LiTaO3 nanoparticles embedded in amorphous SiO2
【2h】

Frequency-dependent bifurcation point between field-cooled and zero-field-cooled dielectric constant of LiTaO3 nanoparticles embedded in amorphous SiO2

机译:嵌入非晶SiO2中的LiTaO3纳米粒子的场冷和零场冷介电常数的频率相关分叉点

摘要

Splitting between the field-cooled dielectric constant and the zero-field-cooled dielectric constant was observed for a diluted system of LiTaO3 nanoparticles (diameter 30 Å) embedded in amorphous SiO2. At the applied field frequency of 100 kHz, the real part of the field-cooled dielectric constant diverged from that of the zero-field-cooled one at 380 °C. The bifurcation point of the history-dependent dielectric constant rose from 310 to 540 °C upon increasing the field frequency from 10 to 1000 kHz. Bulk LiTaO3 powders showed no splitting in the history-dependent dielectric constant and the maximum at 645 °C in the real part of the dielectric constant, despite the variation of frequency. Both the splitting of the history-dependent dielectric constant and the frequency dependence of the bifurcation point suggest that the LiTaO3 nanoparticles with a single-domain structure were in the superparaelectric state as a consequence of insignificant cooperative interactions among the nanoparticles in the diluted system. The energy barrier of 0.9 eV separating two (+p and –p) polarization states corroborated the potential of the LiTaO3 nanoparticle for ultrahigh-density recording media applications.
机译:对于嵌入非晶硅中的稀释的LiTaO3纳米粒子(直径30Å),观察到了场冷介电常数和零场冷介电常数之间的分裂。在施加的100 kHz场频下,在380°C时,场冷介电常数的实部与零场冷介电常数的实部相差较大。随着磁场频率从10 kHz增加到1000 kHz,与历史相关的介电常数的分叉点从310°C上升到540°C。尽管频率变化,大块的LiTaO3粉末在由历史决定的介电常数和645°C的介电常数的实数部分中都没有分裂。历史相关的介电常数的分裂和分叉点的频率相关性均表明,由于稀释体系中的纳米粒子之间无意义的相互作用,具有单畴结构的LiTaO3纳米粒子处于超顺电状态。 0.9 eV的能垒将两个(+ p和–p)极化状态分开,这证实了LiTaO3纳米粒子在超高密度记录介质应用中的潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号